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On important precursor of singular optics (Tutorial)

机译:关于奇异光学的重要先驱(教程)

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The rise of singular optics is usually associated with the seminal paper by J. F. Nye and M. V. Berry [Proc. R. Soc. Lond. A, 336, 165-189 (1974)]. Intense development of this area of modern photonics has started since the early eighties of the XX century due to invention of the interfrence technique for detection and diagnostics of phase singularities, such as optical vortices in complex speckle-structured light fields. The next powerful incentive for formation of singular optics into separate area of the science on light was connectected with discovering of very practical technique for creation of singular optical beams of various kinds on the base of computer-generated holograms. In the eghties and ninetieth of the XX century, singular optics evolved, almost entirely, under the approximation of complete coherency of light field. Only at the threshold of the XXI century, it has been comprehended that the singular-optics approaches can be fruitfully expanded onto partially spatially coherent, partially polarized and polychromatic light fields supporting singularities of new kinds, that has been resulted in establishing of correlation singular optics. Here we show that correlation singular optics has much deeper roots, ascending to "pre-singular" and even pre-laser epoch and associated with the concept of partial coherence and polarization. It is remarcable that correlation singular optics in its present interpretation has forestalled the standard coherent singular optics. This paper is timed to the sixtieth anniversary of the most profound precursor of modem correlation singular optics [J. Opt. Soc. Am., 47, 895-902 (1957)].
机译:奇异光学器件的兴起通常与J. F. Nye和M. V. Berry [Proc。 R. Soc。隆重。 A,336,165-189(1974)]。自二十世纪八十年代初以来,由于用于检测和诊断相奇异性的干涉技术(例如复杂散斑结构光场中的光学涡旋)的发明,这一现代光子学领域的强烈发展已经开始。在计算机上生成全息图的基础上,发现用于创建各种奇异光束的非常实用的技术,是将奇异光学形成光学领域的下一个强大动力。在二十世纪的20世纪90年代和90年代,奇异光学几乎完全在光场完全相干的条件下演化。仅在二十一世纪的开端,人们才意识到,单光学方法可以有效地扩展到支持新奇异性的部分空间相干,部分偏振和多色光场,从而建立了相关奇异光学。在这里,我们表明相关奇异光学具有更深的根源,升至“预奇异”甚至是激光前时代,并且与部分相干性和偏振相关。可以肯定的是,在目前的解释中,相关奇异光学已经阻止了标准相干奇异光学。本文被定为现代相关奇异光学最深刻的先驱六十周年[J.选择。 Soc。 Am。,47,895-902(1957)。

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